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Diachronous Variscan tectonothermal activity in the NW IberianudMassif: Evidence from 40Ar/39Ar dating of regional fabrics

机译:伊比利亚西北部 ud的历时Variscan构造热活动断层块:来自40Ar / 39Ar区域织物约会的证据

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摘要

Multigrain concentrates of hornblende and muscovite together with whole-rock slate/phyllite samples have been datedud(27 analyses) using 40Ar/39Ar incremental-release methods along a systematic traverse across the various lithotectonicudstructural elements which comprise northwestern sectors of the Variscan Iberian Massif. Hornblende concentrates fromudamphibolites in the allochthonous Ordenes Complex yield plateau isotope-correlation ages of 425 Ma and 377 Ma.udMuscovite concentrates and whole-rock slate/phyllite from this and the Cabo Ortega1 Complex yield plateau ages whichudrange from 367 Ma to 295 Ma. Analyses of similar material from the relative autochthon yield plateau ages between 359udMa and 275 Ma. Muscovite concentrates from three late- to post-kinematic granitic stocks yield plateau ages between 309udMa and 274 Ma.udAt least seven of the 4oAr/39Ar analyses from metamorphic rocks record variable thermal rejuvenation of intracrystallineudargon systems associated with emplacement of proximal granitic stocks. The remaining analyses may be used to constrainudthe local age of various Variscan tectonothermal events. The oldest fabric ages are recorded in allochthonous units whereasudthe youngest fabric ages occur along the boundary between internal and external zones. Middle Devonian ages are recordedudin the allochthon and suggest a chronological continuity with deformational events in the relative autochthon, whereudVariscan deformation initiated in the Upper Devonian and diachronously prograded eastward. The first deformationaludevents recorded in the limit within the internal and external zones occurred ca. 20-25 Ma later (lower Namurian).udVariscan deformation systematically prograded diachronously eastward across the orogen as new crustal material wasudadded along the front of the developing erogenic wedge. However, the entire orogen remained tectonically active withuddifferent structural features forming at different times and at different places. An average propagation rate of ca. 5 km/m.y.udis suggested by consideration of a 20-25 Ma difference in correlative fabric ages and present separations.
机译:使用40Ar / 39Ar增量释放方法,沿着包括瓦里斯坎西北部各岩性构造/构造元素的系统遍历,对角闪石和白云母的多粒浓缩物以及全岩板岩/千枚岩样品进行了定日期/ ud(27次分析)伊比利亚地块。角闪石精矿来自异质Ordenes Complex中的辉绿岩精矿,其同位素相关年龄为425 Ma和377 Ma。 ud白云母精矿和全岩板岩/斜晶石,以及Cabo Ortega1 Complex的精矿年龄范围为367 Ma至295毫安根据相对自体屈曲高原年龄在359 udMa和275 Ma之间的相似物质进行分析。从三种晚期到运动后的花岗岩储层中的白云母精矿的稳定年龄在309 udMa和274 Ma之间。 ud至少从变质岩中进行的4oAr / 39Ar分析中,有七项记录了晶内 udargon系统的热回春与近端位置的变化有关。花岗岩股票。其余分析可用于约束/了解各种Variscan构造热事件的局部年龄。最早的织物年龄以异物单位记录,而最年轻的织物年龄则沿内部和外部区域之间的边界发生。异地界记录了中泥盆世年龄,并暗示了相对的自体声带中有形变事件的时间连续性,其中上变泥盆纪开始了瓦里斯坎变形,并向东急变。记录在内部和外部区域极限内的第一变形事件。 20-25 Ma之后(较低的那慕尔山脉)。随着新的地壳物质沿发育中的造山楔的前部增加,瓦里斯坎变形系统地沿造山带向东急进地发展。然而,整个造山带仍保持构造活动,不同的结构特征在不同的时间和不同的位置形成。平均传播速率约为建议考虑5 km / m.y。 udis的相关织物年龄和当前间隔之间的差异为20-25 Ma。

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